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Multi-Satellite and Sensor Derived Trends and Variation of Snow Water Equivalent on the High-Latitudes of the Northern Hemisphere

机译:北半球高纬度地区多卫星和传感器推导的趋势以及雪水当量的变化

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Utilizing more than 30 years of satellite-microwave sensor derived snow water equivalent data on the high-latitudes of the northern hemisphere we investigate regional trends and variations relative to elevation. On the low-elevation tundra regions encircling the Arctic we find high statistically significant trends of snow water equivalent. Across the high Arctic Siberia and Far East Russia through North America and northern Greenland we find increasing trends of snow water equivalent with local region variations in strength. Yet across the high Arctic of western Russia through Norway we find decreasing trends of snow water equivalent of varying strength. Power density spectra identify significant power at quasi-biennial and associated lunar nodal cycles. These cycles of the upper atmosphere circulation, ENSO and ocean circulation perturbations from tides forms the causative linkage between increasing snow water equivalent on low-elevation tundra landscapes and decreasing coastal sea ice cover as part of the Arctic system energy and mass cycles.
机译:利用超过30年的卫星微波传感器得出的北半球高纬度雪水当量数据,我们研究了区域趋势和相对于海拔的变化。在环绕北极的低海拔苔原地区,我们发现雪水当量具有统计学意义上的高趋势。在整个北极西伯利亚和远东俄罗斯以及北美和格陵兰北部,我们发现雪水当量的增加趋势与当地强度的变化有关。然而,在整个俄罗斯西部北极地区直至挪威,我们发现等效强度的雪水呈下降趋势。功率密度谱在准两年期和相关的月球节周期中识别出显着的功率。这些高空大气环流,ENSO和潮汐对海洋环流的扰动形成了低海拔苔原景观上的雪水当量增加与北极系统能量和质量循环的一部分沿岸海冰覆盖减少之间的因果联系。

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